Meier P J, St Meier-Abt A, Barrett C, Boyer J L
J Biol Chem. 1984 Aug 25;259(16):10614-22.
The driving forces for taurocholate transport were determined in highly purified canalicular (cLPM) and basolateral rat liver plasma membrane (LPM) vesicles. Alanine transport was also examined for comparison. Inwardly directed Na+ but not K+ gradients transiently stimulated [3H]taurocholate (1 microM) and [3H]alanine (0.2 mM) uptake into basolateral LPM 3-4- fold above their respective equilibrium values (overshoots). Na+ also stimulated [3H]taurocholate countertransport and tracer exchange in basolateral LPM whereas valinomycin-induced inside negative K+ diffusion potentials stimulated alanine uptake but had no effect on taurocholate uptake. In contrast, in the "right-side out" oriented cLPM vesicles, [3H]taurocholate countertransport and tracer exchange were not dependent on Na+. Efflux of [3H]taurocholate from cLPM was also independent of Na+ and could be trans-stimulated by extra-vesicular taurocholate. Furthermore, an inside negative valinomycin-mediated K+ diffusion potential inhibited taurocholate uptake into and stimulated taurocholate efflux from the cLPM vesicles. These studies provide direct evidence for a "carrier mediated" and potential-sensitive conductive pathway for the canalicular excretion of taurocholate. In addition, they confirm the presence of a possibly electroneutral Na+-taurocholate cotransport system in basolateral membranes of the hepatocyte.
在高度纯化的大鼠肝小管(cLPM)和基底外侧质膜(LPM)囊泡中测定了牛磺胆酸盐转运的驱动力。还检测了丙氨酸转运以作比较。内向的Na⁺梯度而非K⁺梯度能短暂刺激[³H]牛磺胆酸盐(1微摩尔)和[³H]丙氨酸(0.2毫摩尔)进入基底外侧LPM的摄取,使其分别比各自的平衡值高出3 - 4倍(超射)。Na⁺还刺激基底外侧LPM中的[³H]牛磺胆酸盐逆向转运和示踪剂交换,而缬氨霉素诱导的内向负K⁺扩散电位刺激丙氨酸摄取,但对牛磺胆酸盐摄取无影响。相比之下,在“外翻”取向的cLPM囊泡中,[³H]牛磺胆酸盐逆向转运和示踪剂交换不依赖于Na⁺。[³H]牛磺胆酸盐从cLPM的流出也不依赖于Na⁺,并且可被囊泡外的牛磺胆酸盐反刺激。此外,内向负的缬氨霉素介导的K⁺扩散电位抑制牛磺胆酸盐进入cLPM囊泡并刺激其从cLPM囊泡流出。这些研究为牛磺胆酸盐的小管排泄提供了“载体介导”和电位敏感传导途径的直接证据。此外,它们证实了肝细胞基底外侧膜中可能存在电中性的Na⁺ - 牛磺胆酸盐共转运系统。